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- W2029709531 abstract "Abstract We investigate the physical processes in which an electron, upon return to its parent ion, promotes a second electron to an excited state, from which it subsequently tunnels. Employing the strong-field approximation and saddle-point methods, we perform a detailed analysis of the dynamics of the two electrons, in terms of quantum orbits, and delimit constraints for their momentum components parallel to the laser-field polarization. The kinetic energy of the first electron, upon return, exhibits a cutoff slightly lower than 10U p , where U p is the ponderomotive energy, as in rescattered above-threshold ionization (ATI). The second electron leaves the excited state in a direct ATI-like process, with the maximal energy of 2U p . We also compute electron-momentum distributions, whose maxima agree with our estimates and with other methods. Keywords: nonsequential double ionizationexcitationelectron–electron correlation Acknowledgements This work has been financed by the UK EPSRC (Advanced Fellowship, Grant no. EP/D07309X/1 and DTA studentship). We thank A. Emmanouilidou and M. Ivanov for useful discussions." @default.
- W2029709531 created "2016-06-24" @default.
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- W2029709531 date "2010-06-20" @default.
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- W2029709531 title "Laser-induced nonsequential double ionization: kinematic constraints for the recollision-excitation-tunneling mechanism" @default.
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- W2029709531 doi "https://doi.org/10.1080/09500340903414619" @default.
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